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    • 12. 发明授权
    • System and method for controlling and reducing NOx emissions
    • 控制和减少NOx排放的系统和方法
    • US07914747B1
    • 2011-03-29
    • US12766593
    • 2010-04-23
    • Gilbert Otto Kraemer
    • Gilbert Otto Kraemer
    • B01D50/00B01D53/56
    • B01D53/8625B01D53/1456B01D53/56B01D2251/104B01D2251/2062B01D2257/302B01D2257/404B01D2258/0283Y02C20/10
    • A system is provided for reducing NOx emission. The system includes a gas production source configured to produce a gas stream comprising NOx, and an oxidation catalyst positioned downstream of the gas production source. The oxidation catalyst is configured to oxidize NO gas molecules in the gas stream to yield higher order NxOy molecules. A removal system is positioned downstream of the oxidation catalyst and is configured to remove higher order NxOy molecules from the gas stream by solvent absorption or reaction. The system further includes a secondary NOx trimming system positioned downstream of the oxidation catalyst, wherein the secondary NOx trimming system is configured to inject a reactant into the gas stream, the reactant configured to react with NOx molecules present in the gas stream.
    • 提供了一种减少NOx排放的系统。 该系统包括构造成产生包含NOx的气流的气体生产源和位于气体生产源下游的氧化催化剂。 氧化催化剂被配置为氧化气流中的NO气体分子以产生更高级的NxOy分子。 去除系统位于氧化催化剂的下游,并且被配置为通过溶剂吸收或反应从气流中除去更高级的N x O y分子。 该系统还包括位于氧化催化剂下游的二次NOx修整系统,其中二次NOx修整系统被配置为将反应物注入到气流中,该反应物配置成与存在于气流中的NOx分子反应。
    • 14. 发明申请
    • COANDA INJECTION SYSTEM FOR AXIALLY STAGED LOW EMISSION COMBUSTORS
    • 用于轴向低排放燃烧器的COANDA注射系统
    • US20100011771A1
    • 2010-01-21
    • US12175050
    • 2008-07-17
    • Andrei Tristan EvuletBalachandar VaratharajanGilbert Otto KraemerAhmed Mostafa ElkadyBenjamin Paul Lacy
    • Andrei Tristan EvuletBalachandar VaratharajanGilbert Otto KraemerAhmed Mostafa ElkadyBenjamin Paul Lacy
    • F02C7/22F02C7/00F02C7/228
    • F23R3/34F23R3/286
    • The low emission combustor includes a combustor housing defining a combustion chamber having a plurality of combustion zones. A liner sleeve is disposed in the combustion housing with a gap formed between the liner sleeve and the combustor housing. A secondary nozzle is disposed along a centerline of the combustion chamber and configured to inject a first fluid comprising air, at least one diluent, fuel, or combinations thereof to a downstream side of a first combustion zone among the plurality of combustion zones. A plurality of primary fuel nozzles is disposed proximate to an upstream side of the combustion chamber and located around the secondary nozzle and configured to inject a second fluid comprising air and fuel to an upstream side of the first combustion zone. The combustor also includes a plurality of tertiary coanda nozzles. Each tertiary coanda nozzle is coupled to a respective dilution hole. The tertiary coanda nozzles are configured to inject a third fluid comprising air, at least one other diluent, fuel, or combinations thereof to one or more remaining combustion zones among the plurality of combustion zones.
    • 低排放燃烧器包括限定具有多个燃烧区域的燃烧室的燃烧器壳体。 衬套套筒设置在燃烧壳体中,在衬套和燃烧器壳体之间形成间隙。 辅助喷嘴沿着燃烧室的中心线布置,并被配置为将多个燃烧区中的第一燃烧区域的第一流体喷射到第一燃烧区域的下游侧,该第一流体包括空气,至少一种稀释剂,燃料或其组合。 多个主要燃料喷嘴设置在燃烧室的上游侧附近并且位于二次喷嘴周围,并被配置为将包含空气和燃料的第二流体喷射到第一燃烧区域的上游侧。 燃烧器还包括多个三级共挤出喷嘴。 每个三级共挤出喷嘴连接到相应的稀释孔。 三级大空中喷嘴构造成将包括空气,至少一种其它稀释剂,燃料或其组合的第三流体喷射到多个燃烧区域中的一个或多个剩余燃烧区域。